Theoretical Models

  • Kiran Sriperumbudur: Modeling simulation of stimulating electrode coupling with auditory nerve/ nerve fibers
  • Sebastian Hanisch: Mathematical models for the reconstruction of cellular networks on multielectrode arrays
  • Ralf Warmuth: Design and implementation of an FPGA-based embedded system for the automatic adaption of cochlear implants
  • Azhar Z. Syed: Investigation of the influence of the electrode surface structure on the field distribution in neighbouring bio-systems
  • Tom C. Theile: Spatio-temporal modeling of cells interacting on surfaces
  • Ulf Zimmermann: Mathematical approaches to bone remodelling under the influence of electric stimulation
  • Bachir Delenda: Reaction-diffusion model of the adhesion of osteoblasts on metallic implant using electrical stimulation
  • Seyed M. H. Hosseini: Developing of piezoelectric bio-active implants for bone modeling/remodeling process
  • Andrea Böhme: Numerical simulation of therapeutic effects of deep brain stimulation in an animal model
  • Duy Truong: Numerical simulation of bone growth on metallic implants
  • Kevin Struwe: Dynamic adjustment of cochlear implants to improve speech comprehension
  • Christian Bahls: Positivity preserving integration schemes for computing the galvano-taxis of bone cells using reaction-diffusion-equations
  • Karthik Sridhar: Modeling and electrical simulation of deep brain stimulation for treating parkinson's disease
  • Bhargava Palakurthy: Erstellung eines Reaktions-Diffusion-Modells der Adhasion von Osteoblasten auf metallischen Implantaten unter Einbeziehung elektrisher Stimulation